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中深层非饱和岩土多孔介质有效导热系数模型研究 被引量:1
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作者 鲍玲玲 李俊岩 郭海明 《地球物理学进展》 CSCD 北大核心 2021年第6期2281-2290,共10页
为了确定中深层非饱和岩土多孔介质的有效导热系数,本文基于分形几何理论构建了求解中深层非饱和岩土多孔介质有效导热系数的数学模型,模型考虑了液相分形维数D_(fl)、弯曲度分形维数D_(T)、孔隙率φ以及液体饱和度S_(w)等因素对有效导... 为了确定中深层非饱和岩土多孔介质的有效导热系数,本文基于分形几何理论构建了求解中深层非饱和岩土多孔介质有效导热系数的数学模型,模型考虑了液相分形维数D_(fl)、弯曲度分形维数D_(T)、孔隙率φ以及液体饱和度S_(w)等因素对有效导热系数的影响规律,模拟所得数据利用已有的公开实验数据进行验证.仿真结果可以看出非饱和岩土多孔介质的有效导热系数随孔隙率φ的增大而降低,随液体饱和度S_(w)的增大而增大.可以得出结论:非饱和岩土介质的有效导热系数随D_(fl)的增大而逐渐减小,随D_(T)的增大而逐渐减小,随固气和液气导热系数比的增大而增大;且在固气和液气导热系数比一定时,非饱和岩土介质有效导热系数随φ的增加而降低.该预测模型可为计算中深层非饱和岩土多孔介质导热系数提供参考. 展开更多
关键词 中深层非饱和岩土介质 分形几何理论 孔隙率 液体饱和度 有效导热系数
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Calibration of Discrete Element Heat Transfer Parameters by Central Composite Design 被引量:1
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作者 Zongquan DENG Jinsheng CUI +1 位作者 Xuyan HOU Shengyuan JIANG 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2017年第2期419-427,共9页
The efficiency and precision of parameter calibration in discrete element method (DEM) are not satisfactory, and parameter calibration for granular heat transfer is rarely involved. Accordingly, parameter calibratio... The efficiency and precision of parameter calibration in discrete element method (DEM) are not satisfactory, and parameter calibration for granular heat transfer is rarely involved. Accordingly, parameter calibration for granular heat transfer with the DEM is studied. The heat transfer in granular assemblies is simulated with DEM, and the effective thermal conductivity (ETC) of these granular assemblies is measured with the transient method in simulations. The measurement testbed is designed to test the ETC of the granular assemblies under normal pressure and a vacuum based on the steady method. Central composite design (CCD) is used to simulate the impact of the DEM parameters on the ETC of granular assemblies, and the heat transfer parameters are calibrated and compared with experimental data. The results show that, within the scope of the considered parameters, the ETC of the granular assemblies increases with an increasing particle thermal conductivity and decreases with an increasing particle shear modulus and particle diameter. The particle thermal conductivity has the greatest impact on the ETC of granular assemblies followed by the particle shear modulus and then the particle diameter. The calibration results show good agreement with the experimental results. The error is less than 4%, which is within a reasonable range for the scope of the CCD parameters. The proposed research provides high efficiency and high accuracy parameter calibration for granular heat transfer in DEM. 展开更多
关键词 Granular assembly · Parameter calibration · effective thermal conductivity etc · Discrete element method (DEM) · Central composite design (CCD) · Vacuum
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